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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Multiple Low-Lying States for Compound I of P450_(cam) and Chloroperoxidase Revealed from Multireference Ab Initio QM/MM Calculations
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Multiple Low-Lying States for Compound I of P450_(cam) and Chloroperoxidase Revealed from Multireference Ab Initio QM/MM Calculations

机译:P450_(cam)和氯过氧化物酶化合物I的多个低空状态从多参考从头算QM / MM计算中揭示

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The hybrid CASPT2/MM approach is employed to systematically study the ground and low-lying excited states of the ultimate active species of the enzymes P450_(cam) and chloroperoxidase (CPO): the oxoiron(IV)-porphyrin cation-radical Por~(·+)Fe~(IV)=O(Cys) species, the so-called Compound I (Cpd I). The results underscore the fact that the B3LYP/MM method is quite accurate on the most part. However, the CASPT2/MM energies for the ferryl-pentaradicaloid quartet state and the perferryl Fe~VO doublet and quartet states are significantly lower than the B3LYP/MM results. Thus, while the present CASPT2/MM may still overestimate the stability of these states, nevertheless, taken at its face value, the result raises the question whether these states actually contribute to the reactivity of Cpd I. Our paper tries to grapple with this question in view of (a) the recent speculations that the perferryl Fe~VO states may be involved in unusual reactivities of Cpd I species (Pan, Z. Z.; Wang, Q.; Sheng, X.; Horner, J. H.; Newcomb, M.J. Am. Chem. Soc. 2009, 131, 2621-2628) and (b) the DFT/MM results which show that the pentaradicaloid states have intrinsically low barriers for H-abstraction (Altun, A.; Shaik, S.; Thiel, W. J. Am. Chem. Soc. 2007, 129, 8978-8987). The application of CASPT2/ MM to high valent transition metal states like the perferryl are far from being trivial, and the experience and insight gained in this study are expected to be helpful for future successful application of this type of method to resolve key issues in P450 reactivity.
机译:CASPT2 / MM混合方法用于系统研究酶P450_(cam)和氯过氧化物酶(CPO)的最终活性物质的基态和低位激发态:氧代铁(IV)-卟啉阳离子自由基Por〜( ·+)Fe〜(IV)= O(Cys)物种,即所谓的化合物I(Cpd I)。结果强调了这样一个事实,即B3LYP / MM方法在大多数情况下都非常准确。然而,对于亚铁-五aradoidoid四重态和perferryl Fe〜VO双重和四重态的CASPT2 / MM能量显着低于B3LYP / MM结果。因此,尽管目前的CASPT2 / MM仍可能高估了这些状态的稳定性,但从其表面价值来看,结果提出了一个问题,即这些状态是否确实有助于Cpd I的反应性。本文试图解决这个问题。鉴于(a)最近的推测,perferryl Fe〜VO态可能与Cpd I物种的异常反应有关(Pan,ZZ; Wang,Q .; Sheng,X .; Horner,JH; Newcomb,MJ Am。 Chem。Soc。2009,131,2621-2628)和(b)DFT / MM结果显示五角类化合物状态对H的吸收本质上具有较低的障碍(Altun,A .; Shaik,S .; Thiel,WJ Am Chem.Soc.2007,129,8978-8987)。 CASPT2 / MM在高价过渡金属态(如perferryl)上的应用并非易事,并且该研究中获得的经验和见识有望为将来成功应用这种方法解决P450中的关键问题提供帮助反应性。

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